Price from
421.69 GBP
421.69 GBP
Intel Ethernet E810-CQDA2 Internal Fiber Network Adapter 100Gbps
Stores where to buy this product
Sponsored This site contains affiliate links for which we may receive compensation. More information
| This product in Comparor | |
|---|---|
|
Category
This product is cataloged in our store in these categories
|
- Network cards for computers |
|
International
Find this product in one of our international stores
|
This product has not been found in other countries
|
| Colors
Predominant colors of the product |
|
| Identifiers | |
| Brand | ![]() Intel is a computer chip manufacturer that also produces motherboard chipsets, network interface controllers and other integrated circuits. It is the world's largest semiconductor company. |
| ID | 123031909 |
| Dimensions / Weight | |
| Key Features | |
Related articles
Dual‑port 100 Gbps Intel E810-CQDA2 OCP 3.0 adapter delivers ultra‑low latency, PCIe 4.0 compatibility, advanced congestion control and hardware offload for high‑performance data center networking.
Dual‑port 100GbE QSFP28 adapter in a compact PCIe 4.0 x16 form factor, engineered for OCP 3.0 servers with low latency and high throughput, featuring hardware offload and virtualization support.
Intel E810 delivers 100GbE over QSFP28 with PCIe 4.0 x16 low‑profile form, enabling ultra‑fast fiber links for data centers and high‑performance computing while maintaining minimal board space.
Intel E810-CQDA2 Internal Fiber Ethernet Adapter delivers 200 Gbps bidirectional capacity across two QSFP28 ports, installed via PCIe 4.0 x16, optimized for scalable data center networks with low-profile form factor.
High-performance internal fiber Ethernet network card with OCP 3.0 support, enabling fast and reliable connections.
Compact PCIe 4.0 x8 adapter delivers dual 25GbE SFP28 links in a low‑profile form factor suitable for dense racks, Intel’s proven firmware ensures low latency and high throughput while supporting advanced offload, virtualization, and robust error handling ideal for data centers needing scalable, high‑speed connectivity.

